The Use of Radiocarbon Measurements in Atmospheric Studies

Author:

Manning M R,Lowe D C,Melhuish W H,Sparks R J,Wallace Gavin,Brenninkmeijer C A M,McGill R C

Abstract

14C measured in trace gases in clean air helps to determine the sources of such gases, their long-range transport in the atmosphere, and their exchange with other carbon cycle reservoirs. In order to separate sources, transport and exchange, it is necessary to interpret measurements using models of these processes. We present atmospheric 14CO2 measurements made in New Zealand since 1954 and at various Pacific Ocean sites for shorter periods. We analyze these for latitudinal and seasonal variation, the latter being consistent with a seasonally varying exchange rate between the stratosphere and troposphere. The observed seasonal cycle does not agree with that predicted by a zonally averaged global circulation model. We discuss recent accelerator mass spectrometry measurements of atmospheric 14CH4 and the problems involved in determining the fossil fuel methane source. Current data imply a fossil carbon contribution of ca 25%, and the major sources of uncertainty in this number are the uncertainty in the nuclear power source of 14CH4, and in the measured value for δ14C in atmospheric methane.

Publisher

Cambridge University Press (CUP)

Subject

General Earth and Planetary Sciences,Archeology

Reference43 articles.

1. Smoothing by spline functions

2. The isotopic composition of atmospheric carbon monoxide

3. Rafter T A and O'Brien B J 1970 Exchange rates between the atmosphere and the ocean as shown by recent C14 measurements in the south Pacific. In Olsson I U , ed, Radiocarbon variations and absolute chronology , Nobel symposium, 12th, Proc. Stockholm, Almqvist & Wiksell.

4. The global distribution of methane in the troposphere

5. The Zonally Averaged Transport Characteristics of the GFDL General Circulation/Transport Model

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